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首页> 外文期刊>IEE Proceedings. Part B, Electric Power Applications >Curvature-related eddy-current losses in laminated axial flux machine cores
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Curvature-related eddy-current losses in laminated axial flux machine cores

机译:叠层轴向磁通机铁心中与曲率有关的涡流损耗

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An axiperiodic quasistatic model to evaluate the magnetic flux density distribution and power loss due to curvature-related radial flux in the laminated core of axial flux machines is presented. It is shown that the relatively low effective permeability in the radial direction and the shielding effect of induced eddy currents result in negligible radial flux density compared to the peak flux densities in the axial and circumferential directions. This justifies the assumption of zero radial flux, which simplifies electromagnetic modelling of axial flux machine cores. The model predicts that power loss due to curvature-related radial flux is insignificant compared to normal eddy-current loss if the core permeability, core conductivity and number of poles are sufficiently high. A laboratory technique is proposed for the practical detection of power loss due to curvature-related radial flux.
机译:提出了一个轴周期准静态模型,用于评估轴向磁通机叠片铁心中由于曲率相关的径向磁通而引起的磁通密度分布和功率损耗。结果表明,与轴向和圆周方向的峰值磁通密度相比,径向相对较低的有效磁导率和感应涡流的屏蔽效应导致径向磁通密度可忽略不计。这证明了径向通量为零的假设是合理的,这简化了轴向通量机器铁心的电磁建模。该模型预测,如果磁芯磁导率,磁芯电导率和磁极数足够高,则与正常涡流损耗相比,与曲率相关的径向磁通量引起的功率损耗将不明显。提出了一种实验室技术,用于实际检测由曲率相关的径向通量引起的功率损耗。

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